Comprehensive ultrahigh resolution whole brain in vivo MRI dataset as a human phantom

Here, we present an extension to our previously published structural ultrahigh resolution T 1 -weighted magnetic resonance imaging (MRI) dataset with an isotropic resolution of 250 µm, consisting of multiple additional ultrahigh resolution contrasts. Included are up to 150 µm Time-of-Flight angiogra...

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Veröffentlicht in:Scientific data 2021-05, Vol.8 (1), p.138-13, Article 138
Hauptverfasser: Lüsebrink, Falk, Mattern, Hendrik, Yakupov, Renat, Acosta-Cabronero, Julio, Ashtarayeh, Mohammad, Oeltze-Jafra, Steffen, Speck, Oliver
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Sprache:eng
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Zusammenfassung:Here, we present an extension to our previously published structural ultrahigh resolution T 1 -weighted magnetic resonance imaging (MRI) dataset with an isotropic resolution of 250 µm, consisting of multiple additional ultrahigh resolution contrasts. Included are up to 150 µm Time-of-Flight angiography, an updated 250 µm structural T 1 -weighted reconstruction, 330 µm quantitative susceptibility mapping, up to 450 µm structural T 2 -weighted imaging, 700 µm T 1 -weighted back-to-back scans, 800 µm diffusion tensor imaging, one hour continuous resting-state functional MRI with an isotropic spatial resolution of 1.8 mm as well as more than 120 other structural T 1 -weighted volumes together with multiple corresponding proton density weighted acquisitions collected over ten years. All data are from the same participant and were acquired on the same 7 T scanner. The repository contains the unprocessed data as well as (pre-)processing results. The data were acquired in multiple studies with individual goals. This is a unique and comprehensive collection comprising a “human phantom” dataset. Therefore, we compiled, processed, and structured the data, making them publicly available for further investigation. Measurement(s) Diffusion Weighted Imaging • Magnetization-Prepared Rapid Gradient Echo MRI • Functional Magnetic Resonance Imaging • T2 (Observed)-Weighted Imaging • Gradient Echo MRI • MR Imaging Acquisition Protocol Element Time of Flight Contrast Indicator Technology Type(s) 7 Tesla Magnetic Resonance Imaging Sample Characteristic - Organism Homo sapiens Machine-accessible metadata file describing the reported data: https://doi.org/10.6084/m9.figshare.14095997
ISSN:2052-4463
2052-4463
DOI:10.1038/s41597-021-00923-w